Abstract:
A testing method for a fan module is provided. When the fan module is tested, a testing computer sends a testing command to a testing device first. Then, the testing device respond to the testing command and controls the fan module to work in a plurality of rotational speed modes in sequence. The testing device reads an actual rotational speed when the fan module works in one of the rotational speed modes and sends the actual rotational speed back to the testing computer. The testing computer compares the actual rotational speed with a corresponding reference rotational speed value stored in the testing computer, and determines the testing result. Finally, the testing result is shown.
Abstract:
A memory module assembly (100) includes a memory card (200) having a right side surface (240) and a left side surface (220), a heat sink (400) and a heat pipe (500). The heat sink includes a base member (420) attached to the left side surface of the memory card and a shell (440) attached to the right side surface of the memory card and coupled to the base member. The base member includes a substrate portion (422) attached to the left side surface of the memory card and a support portion (424) extended from the substrate portion and supported on a top edge of the memory card. The heat pipe includes an evaporator (520) in thermal engagement with one of the shell and the substrate portion and a condenser (540) in thermal engagement with the support portion.
Abstract:
A communication device and method for managing agendas includes setting options for each of the agenda, generating the agendas, and retrieving contact information from a contact option of each of the agendas. The communication device and the method further includes determining one or more contacts corresponding to the agendas according to the retrieved contact information, and generating an agenda contact group comprising the determined one or more contacts.
Abstract:
Methods and systems for handling a recharge service and communication apparatuses thereof are disclosed according to embodiments of the present disclosure. The method for handling a recharge service includes receiving a recharge service request; checking whether an abnormal recharge log includes a recharge card ID and whether a recharging process has been successfully performed via a recharge card associated with the recharge card ID; requesting a voucher center to authenticate the recharge card associated with the recharge card ID so that the voucher center may recharge, after the recharge card passes the authentication, the user account via the recharge card if the recharge card ID carried in the recharge service request is not contained in the abnormal recharge log, or a recharging process has not been successfully performed via the recharge card associated with the recharge card ID carried in the recharge service request. The methods and systems for handling a recharge service and communication apparatuses thereof according to embodiments of the present disclosure may effectively prevent the situation that one recharge card is used for recharge repeatedly, and thus avoiding economic loss to the operator.
Abstract:
A duplicate image detection system generates an image table that maps hash codes of images to their corresponding images. The image table may group images according to their group identifiers generated from the most significant elements of the hash codes based on significance of the elements in representing an image. The image table thus segregates images by their group identifiers. To detect a duplicate image of a target image, the detection system generates a target hash code for the target image. The detection system then identifies the group of the target image based on the group identifier of the target hash code. After identifying the group identifier, the detection system searches the corresponding group table to identify hash codes that have values that are similar to the target hash code. The detection system then selects the images associated with those similar hash codes as being duplicates of the target image.
Abstract:
A billing method, and a billing system and a bill cycle cut off module which may be used in implementing the method, are provided. The method includes receiving an online billing message and carrying out preprocessing for the message, wherein the online billing message includes user identification information and billing information. The message further includes executing an online bill cycle cut off operation after determining that the bill cycle cut off operation is required to be triggered for an account related to the user identification information, obtaining a result of the bill cycle cut off, and carrying out a rating and billing operation according to the billing information so as to complete billing. The provided method can be applied to implement a real-time online bill cycle cut off and avoid loss resulted from out-of-time bill cycle cut off. Moreover, the provided method may incorporate online billing and offline billing, can be implemented flexibly, and can easily realize individualized bill cycle setting. During the account cancellation process for the user, the provided method may can shorten the waiting time of the user and improve customer satisfaction.
Abstract:
A method for calibrating a feeder for a surface mounting device (SMD) includes the steps of: reading a standard coordinate value; setting controlling parameters including a predefined amount of materials to be delivered and a predefined range of a coordinate deviation; booting the feeder (22) to deliver materials via an operation controller (20); capturing delivered material images of the materials and gear images of the feeder via an image controller (24); calculating coordinate deviations of the captured images; analyzing whether a total delivered amount of the materials is equal to the predefined amount; and calibrating the feeder according to the calculated coordinate deviations if the total delivered amount of the materials is equal to the predefined amount. A system for calibrating a feeder for a surface mounting device (SMD) is also disclosed.
Abstract:
A control circuit for adjusting leading edge blanking time is disclosed. The control circuit is applied to a power converting system. The control circuit adjusts a leading edge blanking time according to a feedback signal relative to a load connected to the output terminal of the power converting system. An over-current protection mechanism of the power converting system is disabled within the leading edge blanking time.
Abstract:
A power connector includes an insulative housing defining at least one passage, at least a first contact to form anode of the power connector and a second contact to form cathode of the power connector received in the insulative housing and each contact having a contacting portion, and a biasing member received in the one passage of the insulative housing; wherein the biasing member includes a flat positioning portion, and a bent elastic arm respectively elastically bracing against the upper wall and the lower wall of said passage, and a tongue portion having a contacting portion and a grounding element to electrically connect outer electric element, and the contacting portion of the tongue portion is closer to the front surface of the power connector than the contacting portion of at least one of the first and second contacts.